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Effect of an electron beam irradiation on optical and luminescence properties of LiBaAlF6 single crystals

机译:电子束辐照对LiBaAlF6单晶光学和发光性能的影响

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Paper reports the effect of a 10 keV, 110 keV and 10 MeV electron beam irradiation on optical and luminescence properties of LiBaAlF6 (LBAF) single crystals at 10, 90, and 293 K. Five absorption bands at 2.0, 3.2, 4.3, 4.9 and 5.5 eV were revealed in irradiated crystals in the energy range of 1.2-9.5 eV. Several PL emission bands (1.7-1.8, 2.2 and 2.5-3.5 eV) related to defects were found in the luminescence spectra at room temperature, while only one luminescence band at E = 2.2 eV appears at T = 90 K in LBAF crystals after a 10 MeV electron bombardment. The PL excitation spectra and time-response for these emission bands were studied at 10, 90, and 293 K. Thermoluminescence (TL) of irradiated crystals was studied in temperature range of 90-740 K. New TL glow peaks at the 166, 530 and 670 K were revealed and their parameters were determined. Temperature dependence of relative photoluminescence yield recorded monitoring emission at the 1.87 and 2.23 eV in the temperature range from 130 to 450 K, were fitted using five quenching processes related to TL glow peaks revealed in our research. Significant similarity in the manifestation of radiation-induced defects for LBAF and previously studied LiBaF3 single crystals is noted. The effect of an electron beam irradiation on optical and luminescence properties of LBAF single crystals and possible origin of the radiation defects were discussed. (C) 2017 Elsevier B.V. All rights reserved.
机译:论文报道了10 keV,110 keV和10 MeV电子束辐照对LiBaAlF6(LBAF)单晶在10、90和293 K时的光学和发光特性的影响。在2.0、3.2、4.3、4.9和4.9时有五个吸收带在1.2-9.5 eV能量范围内的辐照晶体中显示出5.5 eV。在室温下,在发光光谱中发现了几个与缺陷相关的PL发射带(1.7-1.8、2.2和2.5-3.5 eV),而LBAF晶体在T = 90 K时,在E = 2.2 eV处仅出现一个发光带。 10 MeV电子轰击。在10、90和293 K下研究了这些发射带的PL激发光谱和时间响应。在90-740 K的温度范围内研究了辐照晶体的热致发光(TL)。在166、530出现了新的TL发光峰揭示了670 K,并确定了它们的参数。在130至450 K的温度范围内,在1.87和2.23 eV处记录的监测发射的相对光致发光产量的温度依赖性,使用了与我们研究中揭示的与TL辉光峰相关的五个淬灭过程进行拟合。注意到在LBAF和先前研究的LiBaF3单晶的辐射诱发缺陷的表现形式上存在显着相似性。讨论了电子束辐照对LBAF单晶的光学和发光特性的影响以及辐射缺陷的可能来源。 (C)2017 Elsevier B.V.保留所有权利。

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